Lifestyle change accelerates epigenetic ageing in King penguins
Abstract
Abstract A growing body of evidence supports the role of nutrient sensing and metabolism pathways in regulating ageing rate and healthspan, but the diversity of human lifestyles challenges our ability to identify the mechanisms of this age acceleration. Here, we examine how the transition of wild King penguins to zoo husbandry can closely mimic the shift to a Western lifestyle in humans, and shed light on conserved epigenetic changes in responses to sedentary conditions. We show that, just like modern humans, zoo-housed male King penguins experience an extended lifespan, but this comes at the cost of accelerated epigenetic ageing throughout life. This accelerated ageing is associated with differential methylation in key growth and maintenance pathways, including the mTOR and PI3K/Akt networks. Our results demonstrate the conserved link between lifestyle and age acceleration. Such evolutionary evidence may help us to improve risk detection and, ultimately, therapeutics for lifestyle-induced age acceleration in humans.
Article Details
Authors (19)
Robin Cristofari
Leyla R. Davis
Gaël Bardon
Flávia A. Nitta Fernandes
Maria Elena Figueroa
Sören Franzenburg
Institute of Clinical Molecular Biology, Christian Albrechts University of Kiel, Kiel, Germany
Michel Gauthier-Clerc
Francesco Grande
Richard Heidrich
Mikaela Hukkanen
Yvon Le Maho
Miina Ollikainen
Institute for Molecular Medicine Finland, Helsinki Institute of Life Science, University of Helsinki
Elodie Paciello
Patrick Rampal
Nils C. Stenseth
Centre for Ecological and Evolutionary Synthesis, Department of Biosciences, Faculty of Mathematics and Natural Sciences, University of Oslo
Emiliano Trucchi
Department of Life and Environmental Sciences, Marche Polytechnic University
Sandrine Zahn
Céline Le Bohec
Britta S. Meyer